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A Short Description of Mandatory Courses for the
Department of Electrical Engineering
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: ����� ������������ ������� ������� Course : Fundamentals of Electric Circuits
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D����� I��=� 6�B����� ���=F�� 3R� ���=F�� D�����. Basic circuit elements and concepts. Basic laws of circuit theory: Ohm's law, Kirchoff's law. Circuit
theorems: superposition principle, Thevenin and Norton theorems; maximum power transfer theorem.
Techniques of circuit analysis: nodal and mesh analysis; sinusoidal sources and the concept of phasor
in circuit analysis. Introduction to concept of active, reactive, complex power and power factor. :3��6�� @2/� Text Books
Boylestad, "Introductory Circuit Analysis", Prentice Hall, Last Edition.
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: ����� ������������ ������� I�%J Course : Electric Circuit Analysis
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��O.T2���B&2� k�h�� P��9h�� 7�^C�� �� Frequency response of RLC and resonance circuit: concept of transfer function, resonance, bode
plots, introduction to filters; two-port networks; mutual inductance and transformers; transient
analysis of first and second order circuits; three phase circuits; introduction to Op-Amp, ideal
characteristics with simple applications; diode characteristics, clipping and rectification.
:3��6�� @2/� Text Books
Nilsson, "Electric Circuits", Addision Wesley, Last Edition.
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�9��-�� �_�t� v ��&�� 6��G�m�� lj� 6��-�L�9o�� �������� O����. Review to vector calculus; electrostatic fields; Gauss's law and divergence; electric potential;
dielectrics and capacitance; Poisson's and Laplace’s equations; charge images; current density and
conductors; magnetostatic fields; Biot–Savart and Ampere's laws; curl and Stoke's theorem;
magnetic materials and circuits; self and mutual inductances; energy in static fields. :3��6�� @2/� Text Books
Sadiku, "Elements of Electromagnetics", Oxford, Last Edition.
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Microstrip transmission lines. Smith chart. Impedance techniques. Theory of waveguides
(rectangular and circular) microwave components and cavity resonators. Introduction to radio
wave propagation. :3��6�� @2/� Text Books
Sadiku, "Elements of Electromagnetics", Oxford, Last Edition.
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: ������ ���:��|� ��� Code & No. : EE 2050
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KCL. Superposition, Thevenin's, and maximum power transfer theorems in DC circuits; series and
parallel AC circuits; resonance in series and parallel circuit; maximum power transfer theorem and
power factor improvement in AC circuits; transients in DC circuits; magnetically-coupled circuits.
Three phase circuits. :3��6�� @2/� Text Books
Boylestad, "Introductory Circuit Analysis", Prentice Hall, Last Edition.
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: ������ ���� ��� Code & No. : EE 2111
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combinational logic circuits design and analysis; MSI and PLD components. Introduction to
synchronous sequential logic; flip flops; analysis of clocked sequential circuits; state reduction and
assignment; design of synchronous sequential circuits and PLA’s. :3��6�� @2/� Text Books
Moris, "Digital Design", Prentice Hall, Last Edition.
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: ������ ���� � ��� Code & No. : EE 2121
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Boolean functions using AND and OR gates; NAND and NOR implementation; XOR and address
decoder; design of combinational circuits; flip-flops; design of sequential circuits; sequential
PLA’s. :3��6�� @2/� Text Books
Moris, "Digital Design", Prentice Hall, Last Edition.
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: ������ ����|X ��� Code & No. : EE 3541
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Microprocessors architecture; addressing modes and techniques; instruction set; assembly
language programming; interrupt systems; input/output devices and timing; memory devices;
future trends in microprocessors. :3��6�� @2/� Text Books
Triebel and Singh, "The 8088 and 8085 Microprocessors", Prentice Hall, Last Edition.
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: ������ ����|| ��� Code & No. : EE 3551
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Microprocessor hardware models. Instruction sets. Assembly language programming and
debugging. Memory and input/output mapping. Input and output instructions. Input/output
interfacing., parallel and serial port interfacing, timer, interrupt controller interfacing, Introduction
to interrupts. Project. Micro-controllers: programming and interface. :3��6�� @2/� Text Books
Triebel and Singh, "The 8088 and 8085 Microprocessors", Prentice Hall, Last Edition.
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: ������ ������ ��� Code & No. : EE 3001
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Measurements fundamentals: units and standards, errors, statistical analysis; DC/AC meters
construction; loading effect; insertion loss; difference and instrumentation amplifiers;
oscilloscope: CRT, amplifiers, triggered sweep circuits, attenuation, specifications; spectrum
analyzer, transducers and sensors: passive and self-generating transducers; liquid crystal displays
(LCDs), CCDs, and optical fiber sensors; digital measurements: data conversion principles; digital
voltmeter; grounding, shielding, and noise. :3��6�� @2/� Text Books
David and Buchla and Wayne Malachan, "Applied Electronics Instrumentations and
Measurements", Last Edition. A����� : References
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: ������ ������ ��� Code & No. : EE 3021
: ����� �� I^=�� ���������^���� ��%G�^'�� Course: Analog and Digital Instrumentation
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!(�������� ��[ D��s�) !����fA� ����I�b-'�� D��s����=1'-�� !���%��� p����� !. Measurements and the generalized measurement system. Analog instruments. Measurement of
power and energy power factor and frequency. DC and AC bridges. Error analysis, DC measuring
instruments, AC measuring instruments. Instrument transformers. Error statistics, electronic
voltmeter, oscilloscope, signal generator, impulse generator, integrated circuit signal generator,
digital instruments, data acquisition, transducers, recorders, laser measurements. :3��6�� @2/� Text Books
David and Buchla and Wayne Malachan, "Applied Electronics Instrumentations and
Measurements", Last Edition. A����� : References
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: ������ ����� � ��� Code & No. : EE 3010
: ����� ��:I�%J 89��� ����fA� Course: Signals and Systems Analysis
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Motivation and applications, signal classifications, signal operations, singularity functions; linear
time-invariant systems and convolution; correlation; Fourier series and transform for continuous
and discrete time signals; applications; Laplace transform and applications; introduction to z-
transform. :3��6�� @2/� Text Books
Oppenheim, Willsky and Nawab, "Signals and Systems", Prentice-Hall, Last Edition.
A����� : References
Haykin and Veen, "Signals and Systems", John Wiley, Last Edition.
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: ������ ���:� � ��� Code & No. : EE 3121
: ����� ����5�c��A� �������� z��B9�� ������� Course: Basic Electronics Devices and
Circuits �������� ������� :� )� ! ! � ( Credits : 2(2,1,0)
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P��9G��B&���P���:� $��c�� :! ��N� .� ���'�� �H9�! $��c�� :P��9h�� ��'-*�5�c�� .D3B���� D3oC�� ����fA� ���� M �s�^9��P���:�! I^=�� ���&5! q���� !�^'-�� ���'�� ���� M �s�^9�� �^'-�� ���'�� �D3B���� D3oC�� ����fA�! �%���� �e n���
4�=� ��'-*�5��2 I^[� $���2 :E�t� 3G�2 ��'-*�5��2 .D������� ��-���) I<�� TBfMOSFET( �*�='�� ��5 ?�! .� ���'�� �H9���N�! ��&a� 3R� ��&a� ����B&'�� .q���_�P%�o1'�� n�^%�!���'�� �*��� ! 3G�2 ��'���5��2 ����O !�Bs���� �B��-�� ��-�=�� �*�o'��
.�h*�m� ��^��� E�t� PN junction diode: basic structure, I-V characteristics, large and small-signal models. Bipolar
junction transistor (BJT): basic structure, modes of operation, dc biasing, dc and small-signal
models, single stage BJT amplifiers. Field-effect transistors (FET): structure and operation of
enhancement MOSFETs, I-V characteristics, dc biasing. Linear and nonlinear applications of op-
amp. Current Mirror. Negative and positive feedback. CMOS logic gates and pass transistor logic
gates. Dynamic logic. :3��6�� @2/� Text Books
Sedra and Smith, "Microelectronic Circuits", Oxford University Press, Last Edition.
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: ������ ���� � ��� Code & No. : EE 3131
: ����� �� I^=�A� �������� z��B9�� ���������5�c�� Course : Basic Electronics Devices and
Circuits Laboratory
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,�'-�� :pO�-�� Level : 6th
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E�B�'�_ �&�-� ����O 6n�^� E�t� 3G�2 ��'-*�5��2 7��}'�� 6E�t� 3G�2 ��'-*�5�c� �^'-�� ���'�� q���� 6n�^�I*�='�� .P[�-2_� ����OMOS .��^���
Introduction to the lab tools. I-V characteristics of diode. Clipping circuits using diodes.
Rectification using diodes. Zener diode and regulators. BJT dc biasing. CE BJT amplifier.
MOSFET DC biasing. CS MOSFET amplifier. Simple AM receiver circuit, MOS digital circuits. :3��6�� @2/� Text Books
Sedra and Smith, "Microelectronic Circuits", Oxford University Press, Last Edition.
A����� : References
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: ������ ���� ` ��� Code & No. : EE 3171
: ����� ����^���� ��%G�^'�� ��5�c��A� ������� Course: Analog and Digital Electronic Circuits
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Pre-requisite : EE 3121
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,V��=�� 3R� V��=�� n��� :���%^=�� n�� ��&a� 3R� ��&a� ����B&'�� �*�o'�� .���'�� �*��� .P%@�F'�� n��� ,I����� ,I@�F��V��=�� ����O 6��^��� �_�t� 3G�2 ��'-*�5��2 ����O .�Bs���� �B��-�� ��-�=�� ����O 6������9*��� ���&9�� ������� 6P�&9�� ��^���
.��^��� P��9h�� ��'-*�5�c�� Linear and nonlinear op-amp applications: inverting and non-inverting amplifiers, integrator,
difference amplifier, differential amplifier. Current mirror. Negative and positive feedback.
NMOS and CMOS inverters, CMOS and pseudo NMOS logic gates, pass-transistor logic,
dynamic logic. BJT digital circuits: TTL, and ECL logic. :3��6�� @2/� Text Books
Sedra and Smith, "Microelectronic Circuits", Oxford University Press, Last Edition.
A����� : References
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: ������ ���� ~ ��� Code & No. : EE 3191
I^=� : ����� ��'�� ��5�c��A� ���������^���� ��%G�^ Course: Analog and Digital Electronic Circuits
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,�'-�� :?��h�� Level : 8th
���� 7��}'��� ��5�c��A� ������� I�h�PSPICE%� ��&a� ����B&'�� !n�^ u���� !P%�o1'��Wien Bridge ��Hf��� !:���=F�� ����=��� D3oC�� ��OOc�� �f�� LPF HPF D���O ! ���� �F�schmitt trigger ��'-�� 3R ���m� O�='� D���O�
)unstable multi vibrator 7��}'��� P%@�F'�� }��� !(BJT���� 7��}'��� ��^� ����O ��9�� �^C2 !VHDL ����O !MOS ����O !��^��� BJT ��^���.
PSPICE simulation of electronic circuits. Linear applications of op-amp. Wein-bridge oscillator.
Active filters: LPF, and HPF. Schmitt trigger and unstable multi-vibrator. Differential amplifier
using BJT. Design and implementation of digital circuits using VHDL. CMOS inverter
characteristics. TTL inverter characteristics. :3��6�� @2/� Text Books
Sedra and Smith, "Microelectronic Circuits", Oxford University Press, Last Edition.
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: ������ ������� ��� Code & No. : EE 3200
: ����� ���_�C2_� �O�B� Course : Communications Principles
: �������� ������� � )� ! !� ( Credits : 3(3,1,0)
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n[ ��%�5� ����fA� I�%J 6���[ D�85� ����� �^85:� �2_� ;^�2 !;^�'�� 6���9��� 6��-I*�J 6��&��� OOc�� ;^�2 6OOc��6 P�B9�� Q����� ;^�'�� 6?���� �-�'� ��h�A� 6���B9�� ;^�2� ��9�=�� 6-t� ��C�� 6E�B�'�_� q��s 6OOc�� �-�'� ��h�A�
;^�2� P%@�F'�� ;^�'��K�F��6����'�� D��=� ������� 6 ���c�� P&a�! ���^��� �_�C2_� �*��'%� ����� 6P��9h�� 3G�'�� 6I*�= P^���.
Overview and basic elements of communication systems; signal analysis; transmission through
systems and channels; modulation; AM; frequency conversion; FM and PM; super-heterodyne
receiver; FDM; stereo broadcasting; sampling; pulse modulation (PAM, PWM, PPM); TDM;
pulse code modulation (PCM); DPCM and DM; regenerative repeaters; advantages of digital
communication; line coding (Binary Signaling); introduction to digital modulation (ASK, FSK,
PSK). :3��6�� @2/� Text Books
Haykin, "Communications Systems", John Wiley, Last Edition.
A����� : References
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: ������ �����(� ��� Code & No. : EE 3260
: ����� ���_�C2_� I^=� Course : Communications Laboratory
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=2 !��B9�� �=� I*�=2 .��9�=�� .Q��&�� I*�='�� !QOOc�� I*�='�� !Q�=-�� I*�='�� I*�=2 .��B9�� ��[ I*�=2 !��B9�� .�� I*� .?���� �-�2 O�=2 .����'F� ��&�� ���q� I*�=2 !����'F� OOc�� ���q� I*�=2 !����'F� �=-�� ���q� I*�=2 .�'�O I*�=2 !��B9�� ���
.OOc�� �-�2 O�=2 ����� ���5� .�*�CB�� /���:� ���d !�*�CB�� �gB�'-�� .�*�CB�� �g���� �����:� ���a� ����O .��� P���] ?� �+�-� �=� �%[ P-�L�9o��� P�������� E�t� p�� .��=1�� ��[ !K�&9�� ��[ !3B�'�� I��=� !��]��_� :�������%�
.�s��� ���s�� .��C��Cd� D��fA� I�5 w�&d .�������%� ��B&��� ��&&}�� �� .E���A� Amplitude modulation AM, frequency modulation FM, phase modulation PCM. Sampling. pulse
amplitude modulation, pulse time modulation, pulse width modulation. Pulse code modulation,
delta modulation. Amplitude shift keying (ASK). Frequency shift keying (FSK). Phase shift
keying. TDM. FDM. Fiber optic transmitter. Fiber optic receiver. Fiber optic characteristics.
Antenna types. Basic proprieties of antennas: directivity, gain, band width, beam width. measure
the electrical and magnetic fields far at a distance from the antenna. Polar and cartesian diagram.
Transmission lines and properties. Waveguides. :3��6�� @2/� Text Books
Haykin, "Communication System", John Wiley, Last Edition.
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: ������ ������� ��� Code & No. : EE 3220
�� : ����� ��^��� �_�C2_� Course: Digital Communications
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Basic elements of digital communications systems; review of probability theory; base-band pulse
transmission (matched filters, inter-symbol interference); eye pattern, Nyquist criteria;
equalization. Digital pass-band transmission: coherent PSK,FSK,QPSK,MSK; non-coherent
orthogonal modulation; power spectra and bandwidth efficiency of binary and quaternary
modulation schemes. Information theory: mutual information and channel capacity. Source
coding; error control coding (channel coding). :3��6�� @2/� Text Books
Haykin, "Communications Systems", John Wiley, Last Edition.
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Prince Sattam bin Abdulaziz University
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: ������ �����X� ��� Code & No. : EE 3240
: ����� ����^��� ����fA� �N�=� Course : Digital Signal Processing
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Review of discrete-time signals and systems; the discrete-time Fourier transform, fast Fourier
transform, Z-transform, recursive and no recursive digital filters design and realization;
decimation and interpolation; applications of digital signal processing in communications. :3��6�� @2/� Text Books
Mitra, "Digital Signal Processing: A Computer Based Approach", Mc Graw Hill, Last Edition.
A����� : References
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: ������ �����|� ��� Code & No. : EE 3350
: ����� ������������ �_�� ) ( Course: Electric Machines (I)
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Pre-requisite : EE 2020 & EE 2030
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��hm� ����j� !3o'�� ���'�� �_� �O�B� !(���L:� ��GgG �_�j� !��2���� �_�j� !D��F��� !��N� �892 !��+���� ���L:� ��GgG 3oC�� 3o'�� ���'�� ����� !(�[�-�� M �H'�� !T�hm� ����j� ���� ��� !��O:� ����-� !��+���� D������ !I�o1'�� !$��c��)D .
.(D�&a� ����� !���a� ����� !���=�� ����j� !�%}'��� �=5�^�� ����� !Ts��� �*O��� ��hm� ����j�) DC Machines: (construction, winding diagram, classification, motor characteristics, speed and
torque calculation, speed control, starting, generator characteristics, voltage and current
calculation). Transformers (construction, operation of single-phase transformers, equivalent
circuit, voltage regulation and efficiency, auto-transformers, three-phase transformers), AC
machinery fundamentals, three-phase induction machines (construction, operation, equivalent
circuit, performance calculations, starting of induction motors, speed control), small AC motors
(single-phase induction motors, reluctance and hysteresis motors, universal motors, servo
motors, stepper motors. :3��6�� @2/� Text Books
Chapman, "Fundamentals of Electric Machinery", McGraw Hill, Last Edition.
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: ������ ����X�� ��� Code & No. : EE 3400
: ����� ��,���� �^85� �O�B� ���������� Course : Fundamentals of Power System
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Power system components and representation; transmission line and cable parameters; analysis of
transmission and distribution lines; electric insulators; grounding systems; high voltage surges. :3��6�� @2/� Text Books
Husain, "Electrical Power Systems", CBS Publisher & Distributors, Last Edition.
A����� : References
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: ������ ����| ��� Code & No. : EE 3511
: ����� ���H'�� �^85� P���%'�� Course : Automatic Control Systems
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'�� �_O�=�� !pg�_ !��%�}'�� ��3o'��) ��@�*��� ��F%a� �=s��� z&}��) 89�� I�h� 6(��%@�FP��9C�� !I*�H'�� E��O !z&{ 89�� ����'�� 6���m� ��3o'� I�%J 6����5������ ���������� 89�� �s�� 6(����fA� u��-5� �'*�3] ��� ��*�L 7��}'��� I�%J 6
�=B�� M 89���� ����� 6QOOc�� �=B�� M 89�� I�%J 6���N� ��-� 6����P%���'��� P%@�F'��� ���9'�� �H'�� i. Review of mathematical background (complex variables, Laplace, differential equations); system
representation (block diagram, transfer functions, signal flow graph), modeling of electric and
mechanical systems; state variable analysis; stability using Ruth Hurwitz method; time domain
analysis; root locus; frequency domain analysis; introduction to PID control. :3��6�� @2/� Text Books
Dorf and R. Bishop, "Modern Control Systems", Addison-Wesley, Last Edition.
A����� : References
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: ������ ����XX� )*� Code & No. : MATH 2440
: ����� ��P&a� nN� Course: Linear Algebra
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.P&a� Vectors: column and row vectors, the product of vectors, matrices and their combination with vectors,
the addition and multiplication of matrices, the solution of linear equations, matrices: matrix algebra,
determinants, the inverse of square matrix, permutation matrices, systems of equations and inequalities,
matrix algebra, determinants, linear dependence and linear independence, properties of matrices
inverse and adjoint matrix, matrix functions of a single variables, solution of systems of linear
equations, introduction and properties, the solution of linear systems by elimination rank of matrices,
eignvalues and eignvectors, introduction, properties of eignvalues and eignvectors, applications,
diagonalizable matrices, block diagonal and Jordan forms, review and miscellaneous exercises. :3��6�� @2/� Text Books
Gilbert Strang, "Introduction to Linear Algebra", Wellesley-Cambridge Press, Last Edition.
A����� : References
Thomas S. Shores, "Applied Linear Algebra and Matrix Analysis", Springer-Verlag publishing,
Last Edition. P������ 7�=%� T'-%U -��� V%W ��+��� X��/ X� \��� 0]
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: ������ ����|( ��� Code & No. : EE 3561
: ����� �� �&������ M ����-m� #���9 �������� Course: Computational Methods in Electrical
Engineering : �������� �������� )� ! !�( Credits : 3(3,1,0)
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1090
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th
Ih� ���Wn�� 7�� 7��}'��� QO�=�� I�%H'�� �����MATLAB, MATHCAD, IMSL I�!��&a� 3R �_O�=�� I� !���-� I� !P^��� I���'��� I@�F'�� !E����� $*��2 !E�^�'�_� !��&a� �_O�=�� ?� D3B��� 89�� �_O�=^%� �����'�_� ����
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Introduction to computational methods using computer packages, e.g. Matlab, Mathcad or IMSL.
Solution of non-linear equations. Solution of large systems of linear equations. Interpolation.
Function approximation. Numerical differentiation and integration. Solution of the initial value
problem of ordinary differential equations. Applications on Electrical Engineering.
:3��6�� @2/� Text Books
R W Hamming, "Numerical Methods for Scientists and Engineers", Courier Dover
Publications, Last Edition. A����� : References
Erwin Kreyszig, "Advanced Engineering Mathematics", / Paperback / Wiley, John & Sons,
Last Edition.
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: ������ ����|� ��� Code & No. : EE 3521
�^85� I^=� : ����� ���H'�� P���%'�� Course : Control System Laboratory
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,�'-�� :.��'�� Level : 9th
!p����� ��n�� !�go1��� ���=1'-�� !��%*�J� ����fA� �N�=� !����fA� ��-� !D�*�=�� !�&a� I�%J� �&a� !��5��B�� �N�=� ����O !�=&�'��� ��^��� ����fA� .I���m�� D����� ��*�o� !��&d 3o�� ��n���A/D �D/A ! O���:� !I*�H'�� �[��� ����
O���:�� ����9h��BCD �������� ���9�2 !7�-� �=B-�� ��e ����=�� !��5��B�� E���� !��^��� ��sq��� !���F1��� ��O���� ! ��-�� :$��m� �%[ D�^'=�� �������� !��^��� ���=1'-�� !��O��=�� #���L !��^���IEEE488 z�������RS232 �USB .
��^��� �H'�� 85 #��J !P^��� �H'�� ���9�2 P^��� ��m� Ih�PID (�*����� �N�=�� D���) �-����������� �&���� D���� ! !89�� .���1�
Data processing, error and error analysis, calibration, signal path, signal processing and
conversion, transducers and actuators, instrumentation amplifiers, non-linear amplifiers, issues
pertaining to grounds, shields and power supplies. Discrete and digital signal waveform , A/D and
D/A circuits, resolution and conversion speed , accuracy and precision, binary codes and BCD
codes, encoders and decoders, digital multiplexers and data routing, 7- segments displays, LCD,
dot matrix displays, digital measurement techniques: time gating and counter methods, all digital
transducers, computer based instrumentation: the IEEE488 bus, the RS232 and the USB
interfaces. Digital control techniques; realization of digital PID controllers using microprocessor;
process simulation; process control; implementation of digital control via microprocessors;
project. :3��6�� @2/� Text Books
Franklin GF, Powell JD and Workman ML, "Digital Control of Dynamic Systems", Addison
Wesley, Last Edition.
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: ������ ����( ��� Code & No. : EE 3611
��B&�� ���9�� : ����� �� Course : Biomedical Engineering
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Pre-requisite : Phys 1040
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,�'-�� :?��h�� Level : 8th
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�� �^85:� M �*�CB�� �������� ..^-��� ��C�� xH+ .�¤ �5O��2 \�� ����%=�� P].��B& This course introduces the fundamentals of medical instrumentation systems, and bio-signal
processing. The physiology of bio-signals, including how they are generated,
recorded/collected and are used clinically, will be presented. The purpose of the signal
processing methods ranges from noise and artifact reduction to extraction of clinically
significant features. The course gives each participant the opportunity to study the
performance of a method on real bio-signals. The major topics covered in this module are:
Basic concepts of biomedical engineering, cardiovascular, respiratory, neuro -physiological
measurements, X-ray, ultrasound, nuclear, and MRI. How these images are formed and what
types of information they provide will be presented. Testing of audio ability and hearing.
Optical measurements in medical systems.
:3��6�� @2/� Text Books
Semmlow, "Biomedical Systems and Image Processing", CRC Press Inc., Last Edition
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completed in the first semester and proposed parts in the 2nd
semester. :3��6�� @2/� Text Books
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: ������ ���X~~� ��� Code & No. : EE 4990
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to present their progress on monthly basis. At the end of the semester the student presents a detailed
report of developed project and oral presentation. The report should indicate that the student
understands the topic and his specific implementation. Any hardware or software should be
documented in detail. The students grade is based on his work during the project and commitment to
fulfill objectives, on the report, and on his oral presentation. :3��6�� @2/� Text Books
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A Short Description of Elective Courses for the
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: ������ ���X��� ��� Code & No. : EE 4220
: ����� �� �^85��_�C2_� Course : Communications Systems
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�C'{ !�_�C2_� �^85� ?[ �!���H'��� �'��h�� �_�C2g� ��[�9C�� �^85: !��^��� ®c1�� ���%� !����H9�� ���%-�� z���� �^85�%��� �*������ �_�C2� !���%�g�� I�9�� �^85: �����% ��^:� �_�C2� �^85� !���%�g�� ��%j� ���%m� !�*c^���[�9C�� �'��h��
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Overview of communications systems, copper wire transmission systems, digital subscriber loops
(X-DSL), introduction to radio transmission systems; microwave and millimeter ware radio relay
systems; wireless local loops (WLL); satellite systems for fixed and mobile communications
(GEO, MEO, LEO); VSATs systems, noise, noise – figure and SNR analysis in communication
systems; link budget analysis, principles of cellular mobile systems. :3��6�� @2/� Text Books
J.W.Marks and W.Zhuang, "Wireless Communications and Networking", Prentice Hall, Last
Edition.
A����� : References
Roy Blake, "Electrical Communication Systems", 2ed., Delmar, Last Edition..
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������ ��� :X�(� ��� Code & No. : EE 4260
: ����� �����%�g�� �_�C2_� Course : Wireless Communications
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���%�g�� �_�C2_� �^85� �^C'� ��%^=��� �*�89�� ����B'[_� ����O���H'�� �_�C2_� �%[ ���c�� .�! ��OOc�� 7��}'�� DO�[�– �*ga� �-�2– ��1'5� !D���t� D�9��� ��@�@ !��s��d� ¨�B�� Id�O ��s��� ��=fA� 3G�2 !��m� 7�-s:� �%[ ��s��� 3G�2
OOc�� �-�'� E�^j� �2��� �_�C2� �^85� ?� �%h�� !����:� �%[– .D�F1�� �-�2� ?���� �-�2 Practical and theoretical aspects of wireless communication system design are studied; particular
emphasis is on mobile communications. Frequency reuse, hand-off, cell splitting, indoor/outdoor
propagation, co-channel interference, frequency management channel assignment techniques cell-
site antennas, handset antenna/human body interaction, switching and traffic, AMPS, GSM,
TDMA, and CDMA are studied. :3��6�� @2/� Text Books
Rober E. Collin, "Antennas and Radio Wave Propagation", McGraw-Hill, USA, Last Edition.
A����� : References
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��� M ��^��� ����fA� �N�=� : ����� ��P���m� ?� Course: Real- Time Digital Signal Processing
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Architectures of programmable digital signal processors; programming for real-time performance;
design and implementation of digital filters, modulators, data scramblers, pulse shapers, and
modems in real time; interfaces to telecommunications systems. :3��6�� @2/� Text Books
John G. Proakis and Dimitris G. Manolakis, "Digital Signal Processing: Principles, Algorithms,
and Applications", Prentice-Hall, Last Edition..
A����� : References
1. Paulo S.R. Diniz, Eduardo A.B. da Silva, and Sergio L. Netto, "Digital Signal Processing",
Cambridge University Press, Last Edition.
2. S. K. Mitra, "Digital Signal Processing: A Computer-Based Approach", McGraw-Hill, Last
Edition.
3. Sen M Kuo, Bob H Lee and Wenshun Tian, "Real-Time Digital Signal Processing
Implementations and Applications", John Wiley & Sons, Last Edition
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Survey of design and implementation of communication networks, transmission media, network
topologies. Routing. Switching. Network protocols and architectures. Internetworking. Network
performance. Broadband access. :3��6�� @2/� Text Books
Kasap, "Optoelectronics and Photonics: Principles and Practices", Prentice Hall, Last Edition.
A����� : References
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: ������ �����¥ ��� Code & No. : EE 3281
: ����� ����^��� ��C�� �N�=� Course : Digital Image Processing
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o��� !��C�� �*��2 !��9�q O�j� O�=�:� P��9G �*��+ I*�J Ih� ��C�� �g*�J .��^��� ��C�� �N�=� M �����:� K�&��� �]�F�� z � ��Hf�� ?[ ������ �]�F� .��C�� I�h� K�L� !.�&�'�� K�L !O��F��.��[�9< ����B&2 .��C�� ������2
The basic concepts and techniques in digital image processing. Image acquisition, Image display,
image transforms, 2-D discrete Fourier transform, image enhancement techniques, error-free and
lossy compression, segmentation methods, and representation and description methods. Basics of
image filtering and encoding. Industrial applications.
:3��6�� @2/� Text Books
A. K. Jain, "Fundamentals of Digital Image Processing", Prentice Hall, Last Edition.
A����� : References
1. R. C. Gonzales & R. E. Woods, "Digital Image Processing", Addison Wesley, Last Edition.
2. I. Pitas, "Digital Image Processing Algorithms and Applications", John Wiley, Last Edition.
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: ����� ���*������� ���5�c��� Course: Microwave Electronics
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��_� E��'5_� D��s� !�*�����^%� ��B&��� P��9G� ��'��5��2 .�°�5���� �h*�m� �*������� ������ ����*��F�� ���a� �=f:� w���� ! �̈c.��&�� 3B�2� ��@���� !E�t� 3G�2 ����O !�*������� ��s�� 3B�2� ����2 .���^m� rJ
Physical basis of modem microwave devices and circuits. Microwave transistors and tunnel
diodes, transferred electron devices, transit time devices and infrared devices. Microwave
generation and amplification, microwave FET circuits. Noise and power amplification.
:3��6�� @2/� Text Books
William C.Y.Lee, "Mobile Cellcar Telecommunications", Last Edition.
A����� : References
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: ����� ����������� ��s��� ��1'5� Course : Wave Propagation and Antennas
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Co-requisite :
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Introduction to antennas and EM waves' propagation; basic propagation models and antenna
parameters; ground wave propagation; sky wave propagation; space wave propagation; statistical
models and diversity principles; propagation models in mobile radio systems; antenna engineering
in LF, MF, VHF and UHF systems; antenna a linear and planar arrays.
:3��6�� @2/� Text Books
Robert E. Collin, "Antennas and Radio Wave Propagation", McGraw-Hill, USA, Last Edition.
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: ������ ���X�` ��� Code & No. : EE 4271
: ����� ���*�CB�� /���:� �_�C2� Course: Optical Fiber Communications
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s��� ���s��� K�L .r�'1'��� ��F�� !�*�CB�� E���A� ��Bf x��Cd .P¬��'�� ��%��� �'=�� ��%�� .�*�CB�� /���:� M �%^='-���9C2 .E�t�� �&��� !P^��� �F9�� !��-�5_� I��=� !r'1'�� !�=��� p�� .)=� ���=� �*�CB�� /���:� z�� .Q�CB�� ��%�� .
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Optical fiber wave guides: ray and mode theories. Step- index and graded-index fibers.
Transmission characteristics of optical fibers: losses and dispersion. Methods of manufacturing
optical fibers and cables. Connections of optical fibers. Measurements of attenuation, dispersion,
refractive index profile, numerical aperture, diameter and field. Optical sources: semiconductor
lasers and light emitting diodes. Optical detectors. Optical fiber systems. Digital and analog
systems. Design of a simple optical fiber communication link. :3��6�� @2/� Text Books
A.J. Rogers, "Understanding O.F.C.", Artech House Optoelectronics, Last Edition.
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: ������ ���X�| ��� Code & No. : EE 4251
: ����� �� �*������ z��B5� ����O Course: Microwave Circuits and Devices
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���� ��n��*���� !�������� !����Ff�� �����sq� !��� ��2�F��5�c��� P] ?� ��5���������:� �*������ �^85±� .��O� ¢�]��� �<�9=�� ���'� ��O� .7�89�� ����O:��C�� ��n�� :.�@���� r%�� .��O:� ��F<��� ��B%'� �<�9=�� ¢�] �^C2 ����9�� ?�
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���� 6�^C'���sq� �����Ff��. Microwave amplifiers, oscillators, mixer and detectors, and electronic switches are basic
components of microwave systems. The performance of these components is critical to system
performance. This Course therefore teaches the design of these components to satisfy performance
specifications. Topics covered: amplifiers: theory, LNA and multistage design; Oscillator theory:
nonlinear negative resistance, startup, stability, power generation; Gunn and IMPATT diode
oscillators; design of planar passive components and their application; PIN diode switch and phase
shifter analysis and design; mixers and detectors: theory, mixer and detector diodes, diode
detectors and mixers.
:3��6�� @2/� Text Books
Glover, S. Rennack and P.Shepherd, "Microwave Communications Engineering, Vol.1" Last
Edition.
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: ����� ��*������� ����O �^C2� MIC, MMIC Course: MIC and MMIC Design
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�^C2 .�^C'�� �]�F� ���='�� : .�@����MMIC !��B%-��� ����¬_� ���B1�� �s��� !.9C�� ���9�2 :MICROSTRIP w�&a���H'��D �^C2 .,�'-���MMIC� $������ !��B%-��� ����¬_� ���B1�� ?� �e�� !«B-�� �[�� !�^C'�� �<�9[ : $*��2 .�^C'�
��B%-�� ��B1�� �%[ �^C'�� �%[ P%^[! �f��MIC �5������&19�� ��B1�� !! MMIC! .wga�� u����� Solid-state microwave circuits are usually realized using planar technologies, which integrate some or
all components on a substrate. Moreover, monolithic microwave integrated circuits (MMICs) enable
commercial application of microwave technology. Design methods for microwave integrated circuits.
Topics covered: review of design concepts. MIC design: fabrication techniques, modeling of active and
passive networks, microstrip and coplanar lines. MMIC design: lump element design, foundry rules,
modeling of active and passive networks, design techniques. Layout and DRC checks. Selected Hands-
on design work on passive network - MIC filter and coupler, and active network - MMIC oscillator
and mixer.
:3��6�� @2/� Text Books
Allen A. Sweet, "MIC and MMIC Amplifier and Oscillation Circuit Design", Artech Library, Last
Edition.
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Elective Courses (3)
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: ������ ���X `� ��� Code & No. : EE 4170
: ����� ���%���'�� ������� �^C2 VLSI Course : Integrated VLSI Circuit Design
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Pre-requisite : EE 2020, EE 3171
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�^C2 ������MOS ��e ����'���5��2 :3B��� bm�MOS ������ !MOS �^C2� !���C=�� �������� !������9*���� �'��h�� .�9C2� !�Wn�� #&9�� ��+�FC�MOS ����O� !MOS ����^< !MOS �������� � ���}'�� !�^C'�� ;5�� i� �+�@� !
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Large-scale MOS design: MOS transistors, static and dynamic MOS gates, stick diagrams,
programmable logic array design, MOS circuit fabrication, design rules, resistance and
capacitance extraction, power and delay estimates, scaling MOS combinational and sequential
logic design, register and clocking schemes, data-path, and control unit design, elements of
computer-seded circuit analysis and layout techniques. :3��6�� @2/� Text Books
N.Weste and K. Pshraghian, "Principles of CMOS Design", Addison Wesley, Last Edition.
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I^=� : ����� ���%���'�� ������� �^C2 VLSI Course: Integrated VLSI Circuit Laboratory
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��e �%���'�� ������� z��� D����� �^C2 !�h*�m� ������m� ��n�� 7��}'��� �%���'�� ��^��� ������� D����� z�&²� �^C2�� ���&9�� ��+�FC�� ����O ��9�2 7��}'��� �%���'�� ������� ��9� !������m� ��n�� 7��}'��� DO�j� ����B&'��.�Wn
Layout of digital circuits with help of chip layout tools; design, simulation, placement, routing,
and implementation of ASICs with conventional and high level design techniques; laboratory
project. :3��6�� @2/� Text Books
David Van Der Bout, "XSE-1 Practcal Xilinx Designer Lab Book and Foundation Design software
with VHDL and verilog", Prentic Hall, Last Edition. A����� : References
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: ������ ���X | ��� Code & No. : EE 4151
: ����� ��_�C2_� ���5�c���� Course: Communication Electronics
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Pre-requisite : EE 3171, EE 3200
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F00f�� !P&00���� OOc00��� Q�00*O���� OOc00�� ��n00�� !�_�00B�� !��00sq��� �^00C2 !�00�%G�^'�� �_�00C2_� �00^85: �00�F����� $00������� ��00[�^t� I*�00='�� �� n00�� �^00C2 !4�00%�� �00��� 4�00*�F%'�� �gB�'00-� P��900C�� z00&}�� !QOOc00�� I*�00='�� ���00�³ !Q�=00-�� !�*�00�F�� ��n00�� !�*�00�F%� P&00���� OOc00�� ��
� !4�0%�� 4�0*�F%'�� �gB�'-� P��9C�� z&}�� !P��2���2�:� OOc�� ��^�H'� � �*O�^=��� ���+:� �������� !�9���'�� ���F�� .�0�'N�=�� 4��0�:� I0�hI*�00=2 !�00�B9�� �=00� I*�00=2 :�00�^��� �_�00C2_� �00^85: P��900C�� z00&}�� �_�00� �^00C2 !�00���� �00�B9�� I*�00=2 !�00�B9�� .00�� I*�00=2 !�00�B9�� ��00[
0�%G�^'�� i� �0�^���� �0�^� i� �0�%G�^'�� ����0fA�� �g00��� �^0C2.��������� �0¤ �H'0�� �0�N� ���0��� 7��}'0��� �����0�� �^00C2 .��0'��� �0���O� !I*�=2 !��B9�� ��[ I*�=2 !��B9�� �=� I*�=2 ��Ff��� .����'F� ��&�� ���qA� I*�='� �%^='-�� �<�a� ������� .����� ��B9�� I*�=2 !��B9�� .��
Functional blocks of analog communication systems, design of mixers, converters, RF and IF
amplifiers, AM detectors, and FM discriminators. Functional blocks of monochrome TV receivers.
Design of video IF amplifiers, video amplifiers, sync. separators, horizontal and vertical oscillators and
AFC. Functional blocks of color TV receivers. Color signal representation and processing. Functional
blocks of digital communication systems: PAM, PWM, PPM and PCM. Design of S/H circuits, A/D
and D/A converters, and timing (clock generator) circuits. Circuit design using PLL, VCO and
multipliers. Design of PAM, PPM, PWM and PCM transmitters and detectors. Special circuits for
phase shift keying. :3��6�� @2/� Text Books
William Stanely and John Jeffords, "Electronic Communications; Principles and Systems", Thomsom
Learning, Last Edition.
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: ������ ���X � ��� Code & No. : EE 4121
: ����� ����^���� ��%G�^'�� �%���'�� ������� �^C2 Course: Analog and Digital Integrated Circuits Design
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The fundamentals of analysis and design of basic analog circuits. Topics to be covered include operational amplifier design,
basic amplifier feedback theory, frequency stability and compensation, DC bias calculations and circuits, MOSFET and BJT
large- and small-signal device models, small-signal gain and frequency response characteristics of amplifiers, large-signal
characteristics and nonidealities. In the hardware laboratory the student will gain experience designing, building, and
characterizing analog circuits. The students will also learn how to use the SPICE circuit simulation program to compare
actual and simulated performance. The analysis and design of analog circuits incorporating both Bipolar and CMOS
technologies will be considered. This course provides the electrical students with a familiarity and an understanding of the
analytical and computer skills required for the analysis, computer simulation, design, and computer-aided physical layout of
digital integrated circuits.
:3��6�� @2/� Text Books
Paul R. Gray, Paul J. Hurst, Stephen H. Lewis and Robert G. Meyer, "Analysis and Design of Analog Integrated Circuits",
John Wiley & Sons, Inc , Last Edition.
A����� : References
1. Behzad Razavi, "Design of Analog CMOS Integrated Circuits", McGraw-Hill, Last Edition.
2. Ken Martin, "Digital Integrated Circuits Design", Prentice Hall, Last Edition.
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: ������ ���X ��� Code & No. : EE 4111
:����� ���oC�� ��]�9'� ���9�'��� ������ ���5�c��_� O��� Course: Microelectronic Materials and
Nanotechnology :�������� �������� )� ! !� ( Credits : 3(3,1,0)
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Co-requisite :
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!�g<��� � �GD��s:� �%[ O�=�:� I�%�2 .�� D��s� ��9��9�5. Electronic materials including semi-conductors and dielectric materials so as to achieve the overall goal
of introducing students to some of the important concepts that form the basis for understanding of
microelectronic materials. A more descriptive approach is taken to emphasize the concepts and various
proofs are treated at semi-quantitative level without going into too detailed physics. In addition, the
concept of nanostructure is slightly introduced with emphasis on the effect of scaling on the material
behavior as regarding. Topics covered include: Crystal Structure & Crystal Diffraction, Elementary
quantum mechanics, Band theory of solids, Surfaces and interfaces, Dielectric Materials, Hall effect
and Magnetism. Nanotechnology and semiconductors, effect of reducing dimensions on devices. Some
structures of nano devices , MEMS. :3��6�� @2/� Text Books
Gregory L. Temp, "Nanotechnology", AIP Press, Last Edition.
A����� : References
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: ������ ���X � ��� Code & No. : EE 4131
��[�9C��� ���g�'�_� ���5�c��_� : ����� �� Course: Industrial and Consumer Electronics
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[ ���� $=%�� !�[�-�� �B��� !®�j� D���� �s�O �� !z�-� D���� �����5�c��_�µ� !. The state-of-the-art overview of electronic components used widely in industry. These components
may include devices such as: relays, solid state relays, power filters, dc power supply, power
management IC,s…ect.. Other products may also includes timers, programmable and universal
counters, voltage operating valves, firing circuits, piezoelectric transducers. The description of a given
system in industrial application and recognize its components. Examples may include car electronics,
washing machines, electric air condition, temperature controlled ovens etc. Consumer electronics:
relays, solid state relays, power filters, dc power supply modules, timers, LCD displays, universal
counters, digital clocks, power drivers, telephone handset, speakers and microphones, audio power
amplifier modules, light dimmer, microcontroller boards. This course is to be associated with a project
in which the student design and assemble a given simple industrial product in the market like simple
car display panel, temperature or motor speed controller, electronic based toys, electronic lock…etc
:3��6�� @2/� Text Books
James T. Humphries and , Leslie P. Sheets, "Industrial Electronics", Last Edition.
A����� : References
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4- Electrical Power and Machines –
Elective Courses (4)
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: ����� ��D����� �^85� I�%J Course: Power Systems Analysis
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Power system matrices; symmetrical faults; power unsymmetrical faults; load flow analysis;
stability analysis; economic operation of generators. :3��6�� @2/� Text Books
Grainger and Stevenson, "Power System Analysis", McGraw Hill, Last Edition.
A����� : References
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: ����� �� D����� I^=����������� Course : Electrical Power Laboratory
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N� �@ �*�^m� 6Eq��=�� ��B'd� 6�F%'}�� E�=�� O��� E�=�� �5�'�� Eq��=�� �&�� ���§� 6T2�3G�2� k��� ·*�F'�� 6E�=�� #�-92� D������ O�� #+�2 D���� 6������ �g���� #�-92� x��Cd 6I�9�� w�&d x��Cd 6�&��c��� ����=�� �^85:� x��Cd 6��@�:� ������� p��
I^m�. Breakdown and dielectric strength of different insulating materials; flashover tests on insulators;
over-voltage protection and insulation coordination; corona and its effects, ground resistance
measurements; characteristics of isolated and interconnected systems; transmission line
characteristics; characteristics and coordination of protective relays; load-flow simulation. :3��6�� @2/� Text Books
Grainger and Stevenson, "Power System Analysis", McGraw Hill, Last Edition.
A����� : References
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: ������ �����(� ��� Code & No. : EE 3360
: ����� ��) ���������� �_���( Course Title : Electric Machines (II)
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Synchronous machines (components, internal voltage, equivalent circuit, phasor diagram,
performance of turbo-alternator, generator operating alone, parallel operation of AC generators),
DC machines (components, classification, performance, motor characteristics, starting of DC
motors, speed control of DC motors) synchronous machine dynamics: the swing equation, steady
state and transient stability. :3��6�� @2/� Text Books
Chapman, "Fundamentals of Electric Machinery", McGraw Hill, Last Edition.
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&���^'-�� ���'�� ��� ��+�. Equivalent circuit of transformers; Three-phase connections and harmonic problems; equivalent
circuit of three-phase and single-phase induction motors; load testing of induction motors; starting
of single-phase induction motors; equivalent circuit of synchronous machine: performance of
synchronous motors; performance of dc machines. :3��6�� @2/� Text Books
Chapman, "Fundamentals of Electric Machinery", McGraw Hill, Last Edition.
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�� : ������ �X��� ��� Code & No. : EE 4320
: ����� ��:,���� ���5�c��� Course : Power Electronics
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Power semiconductor devices: terminal characteristics; power converters: ac-ac converters,
rectifiers, inverters, dc-dc converters and resonant converters; applications in power systems. :3��6�� @2/� Text Books
Hart, "Introduction to Power Electronics", Prentice Hall, Last Edition.
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: ������ ���X�� ��� Code & No. : EE 4331
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Power semiconductor devices: terminal characteristics; power converters: ac-ac converters,
rectifiers, inverters, dc-dc converters and resonant converters; applications in power systems. :3��6�� @2/� Text Books
Hart, "Introduction to Power Electronics", Prentice Hall, Last Edition.
A����� : References
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: ������ ���XX| ��� Code & No. : EE 4451
: ���� ���H'��� �������� «*�H'�� 85 Course: Electric Drive and Control
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.�������� Motion control in industrial, commercial and transportation systems is carried out using electrical
drives. This course provides students with the working knowledge of various components of an
electrical drive system and their control. After completion of this course, students are expected to select
and size electrical drives for any given application in an efficient manner and should be able to perform
design of different drive components. The topics covered are: characteristics and sizing of power
semiconductor controlled electric drives; DC motor drives: speed and torque control; induction motor
drives: voltage control and variable frequency control; synchronous motor drives: open-loop, closed-
loop variable frequency control; brushless DC drives; drives application examples. :3��6�� @2/� Text Books
R Krishnan, "Electric Motor Drives - Modeling, Analysis and Control", Prentice Hall, Last Edition.
A����� : References
W Leonhard, "Control of Electrical Drives", Springer, Last Edition.
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: ���� ��,���� �^85� M �H'��� I�o1'�� Course: Power System Operation and Control
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Concepts of power system operation; network topology and incidence matrices formation of bus
impedance matrix; unit commitment; optimal power flow; automatic generation control; energy
management systems and control center operation; state estimation; dynamic security assessment. 2/�:3��6�� @ Text Books
Wood and Wollenberg, "Power Generation, Operation and Control", John Wiley, Last Edition.
A����� : References
Grainger and Stevenson, "Power System Analysis", McGraw Hill, Last Edition.
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5- Systems and Controls – Elective Courses (5)
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: ����� ��� 85�^��� �H'�� Course : Digital Control System
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2440
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'�� K�00L� I00�%H'�� ���O� !8900�� �00*�85 ! ��009�=�� �00*�89� �O�00B��� ��00���:� ��00�+:� .�00�^��� 8900�� E�00W M �^00CI00*�J �00=s��� Z ! ( P%0@�F'�� P%��0�'�� $0��9'�� ) P0^��� ��0m� �^0C2 .P^��� �H'�� �^C2 ��g[PID ��0m� r0���h� P��2�0��2:� zB0��� !
P00^���PID !��00�*�='�� 8900�� �^00C2 9'�� �H'00�� �00s��� !��O:� �00�O�=� ��'9'00�� .00� Q�00B �H'00�� 0085 �^00C2 !����'00�_� I00�%J���m� �gd ��9�2 !��^��� D�*�[ ��H�@�2 �%h�� .�.
System theory, and to the analysis tools and design methods in discrete-time domain. The basic
concepts and principles in sampling, Z-transform, zero-order-hold, discrete equivalence and the
relations to discrete-time control design. The design issues for digital PID, PID auto-tuning, phase
compensator, and the model predictive control, including the performance criteria, pole-
placement, stability analysis; design of discrete-time control systems; state-space techniques. as
well as numerous illustrative application examples.
:3��6�� @2/� Text Books
Norman S. Nise ,"Control System Engineering", John Wiley & Sons, Last Edition.
A����� : References
1. Franklin GF, Powell JD and Workman ML, "Digital Control of Dynamic Systems", Addison
Wesley, Last Edition.
2. EF Camacho and C Bordons, "Model Predictive Control", Springer Verlag, Last Edition. P������ 7�=%� T'-%U -��� V%W ��+���
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��[�9C�� �H'�� 85 : ����� �� Course: Industrial Control Systems
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a� ��b%� �B-9��� .�[�9C�� M ���}'-�� �H'�� 85� ��������� ���=1'-�� �go1�� «���� ��%*�J� ����fA� �N�=� �%[ I^'1* p������ ����-m�� �� �f�B�� P^��� �H'�� 7�85� Q����� �H'�� 7�85� �H'�� 85 ���5� P&o* ��+ �H'��� ��a� ��b%� �B-9��� ��� .p����� ��n���DDC �H'�� 7�85�
�q���DCS 9'�� ��m� 7��}'��� �H'�� 7�85� P%@�F'�� P%���'�� ���PID ��F��� ����2���2� r���h�� ¢�] zB@ K�L «���� ��m� ��] r���G zB@ K�L�*�o'�� 7��}'��� �H'�� 7�85 Ih� �H'�� 85 ?� ,�d� ���5� ����� ��] P&o* �^� .��[�9C�� ����B&'�� M T%�o12� ��m� ��] ��F92 �H'�� 7�85 !�����:� �
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Sensors, instrumentation and control systems commonly used in the industry. The sensor and
instrumentation part includes topics such as signal processing and conversion, transducers and
actuators, instrumentation amplifiers, non-linear amplifiers, issues pertaining to grounds, shields and
power supplies. The control portion covers the evolution and types of control systems, centralized
control, direct digital control (DDC), distributed control systems (DCS), field buses, PID control:
tuning methods and refinements, auto-tuning principles and implementation, available industrial PID
controllers and their operation. It will include other common control systems such as feed forward,
cascade, ratio, selective, split range, time-delay compensation, sequence control and PLC. :3��6�� @2/� Text Books
D.E. Seborg, T.F. Edgar, D.A. Mellichamp, "Process Dynamics and Control", John Wiley and Sons,
Last Edition. A����� : References
C. D. Johnson, "Process Control Instrumentation Technology", Regents/Prentice Hall, Last Edition.
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� : ����� ����[�9C�� �H'�� 85 I^= Course: Industrial Control Systems Laboratory
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Co-requisite : EE 4521
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�N�=� �%[ I^'1* p������ ����-m�� ��a� ��b%� �B-9��� .�[�9C�� M ���}'-�� �H'�� 85 #��J� ��������� ���=1'-���H'��� ��a� ��b%� �B-9��� ��� .p����� ��n��� �go1�� «���� ��%*�J� ����fA� �H'�� 7�85 ��F92� #��J P&o* ��+
�f�B�� P^���DDC �q��� �H'�� 7�85�DCS P%@�F'�� P%���'�� ���9'�� ��m� 7��}'��� �H'�� 7�85�PID 7�85 «����. �n�� P�&9�� ��m� 7��}'��� �H'�� 7�85 ��*�� P=��''�� �H'��
Sensors, instrumentation and control systems realization. For sensor and instrumentation: signal
processing and conversion, transducers and actuators, instrumentation amplifiers, non-linear
amplifiers, For control portion covers the realization direct digital control (DDC), distributed
control systems (DCS), PID control, sequence control and PLC. :3��6�� @2/� Text Books
D.E. Seborg, T.F. Edgar, D.A. Mellichamp, "Process Dynamics and Control", John Wiley and
Sons, Last Edition. A����� : References
C. D. Johnson, "Process Control Instrumentation Technology", Regents/Prentice Hall, Last
Edition.
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�H'�� 85 D����� �^C2 : ����� �� Course : Control Systems Design and Simulation
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C2 «���� T2����� 7�89�� �_O�=� u�-� !�*�b'�� !�s�^9�� P]� _� !��%o�� ��%m� �e �H'�� 7�85 �^C2 M �F%'}�� I����� ��m� �^ .7�89�� �_O�=� u�-� #*�L ?[ ��5�h��� ��%^=�� ��g=�� #*�L ?[ �s�^9�� �¦� �s�^9�� K�L ?� ;'�*�L ����� ��] P&o*� .¢��F92� ��[�@��
�e�^9�� O�^'[�� ��B'd_� ����f� ���'d� !��5��B�� .�^� !P%���� �e�^9�� ���'d� !D��s:� D�*�=�) �s�^9�� M ��%^[.(
The various stages in the design cycle of a closed-loop control system, namely modeling, identification,
simulation, controller design and implementation. Students will appreciate the concepts of models and
model structures, the ways to obtain them and their applications. Two modeling approaches will be
covered; physical modeling which includes the principles and phases of modeling using basic physical
relationships, and identification approaches covering both non-parametric and parametric
identification. Practical issues in modeling, including instrument calibration, model structure selection,
data collection configuration, selection of test signals and model validation will also be duly covered.
Via project work, students will have experience in modeling, simulating and controlling real systems.
They will be equipped with useful practical skills at the end of this course.
:3��6�� @2/� Text Books
Ljung, L. and Glad, T. , "Modeling of dynamical systems", Prentice Hall, Englewood Cliffs, Last
Edition. A����� : References
Karnopp, D.C., Margolis, D. L. and Rosenberg, R.C., "System Dynamics : A Unified Approach", Last
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��BC=�� ���B1��� �f�1�� 89�� M ����� : ����� �� Course : Introduction to Fuzzy and Neural
Systems :�������� �������� )� ! !� ( Credits : 3(3,1,0)
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Pre-requisite : EE 3511
Co-requisite :
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t� �O�B� M ����� ��] lHB*� .��BC=�� ���B1��� P�&9�� ¸*�1'%� ����B&'��� ��*�89�� !�����:� �+�=�� ¹�1'��� �f�1�� ��[�^ .��BC=�� ���B1�� $*��2 ��%^[ ��9�� �+ ��F�� ��*� ����� ��] P&=*� .�H'��� k_�'�_� ¹�1'�� i� �5O��* Q��� P�&9��
����:� ���+:� !�H'��� �f�1�� 89�� !�f�1�� ��[�^t� �*�85 �%[ I^'12 ����� ��] M ��'�&o2 '* \�� ��[�@���� ���B1%� �.��BC=�� ���B1�� $*��2� º���� �89'�� z���d !DO�='�� ���B&��� D������ ��B&�� ��e ��BC=��
The fundamental knowledge, theories and applications of fuzzy logic and neural networks. It examines
the principles of fuzzy sets and fuzzy logic, which leads to fuzzy inference and control. It also gives
students an understanding of the structures and learning process of a neural network. Topics covered
include: fuzzy set theory, fuzzy systems and control, basic concepts of neural networks, single-layer
and multilayer, self organizing maps and neural network training.
:3��6�� @2/� Text Books
S. Haykin, "Neural Networks: A Comprehensive Foundation", Prentice Hall, Last Edition.
A����� : References
D. Driankov, H. Hellendoorn, M Reinfrank, "An introduction to fuzzy control", Springer-Verlag, Last
Edition. ��+��� P������ 7�=%� T'-%U -��� V%W X��/ X� \��� 0]
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The mechatronics, as an engineering discipline, is the synergistic combination of mechanical
engineering, electronics, control engineering, and computers, all integrated through the design process.
It involves the application of complex decision making to the operation of physical systems. Topics
include: introduction to mechatronics, dynamic system investigation process, general approach to
physical and mathematical modeling, general concepts in modeling, physical & mathematical modeling
of mechanical, electrical, electromechanical, and multidisciplinary physical systems, modeling system
parasitic effects, time response and frequency response, and analog electronics for mechatronics.
Sensors and measurements. Control design approaches. Mobile robots. A case-study, problem-solving
approach, with video hardware demonstrations, is used throughout the course.
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D. Auslander and C. Kempf, "Mechatronics, Mechanical Engineering Interfacing", Prentice Hall, Last
Edition. A����� : References
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6- Instrumentation and Biomedical Engineering –
Elective Courses (6)
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: ������ ���X(� ��� Code & No. : EE 4621
: ����� �����=1'-��� �go1�� Course : Sensors and Actuators
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Introduction to physics, principles, and operating mechanisms of various kinds of sensors. Using
sensors in designing and developing for different applications. Sensor technology, resistive, capacitive ,
inductive and magnetic transducers, basic sensor structures for each type, sensing effects, physical
sensors and their applications. Dynamic range, linearity, threshold, accuracy, operational environmental
condition strain gauge, thermocouple, RTD, photo sensors for measuring chemical quantities. Light
sensors, flow and speed sensors, radio active sensor. Introduction to digital sensors. Actuators and their
role in automatic control, pulse width modulation technique for power control. Examples in
temperature, speed and light control systems.
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John R. Brauer, "Magnetic Actuator and Sensors", Last Edition. A����� : References
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: ������ ���X(� ��� Code & No. : EE 4631
��� �� : �����=1'-��� ��B&�� ���5�c��_� Course : Bioelectronics and Sensors
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�h^'��� rF��� ��'��5��2 ?[ �=*�� �=s��� .�^�g�� ��B&�� ��-t� !��-t� ��s���9�2 .��B&�� ���9�� M �*��^���� ���^��� p�� ��5n� I����� IH9�� $%C�� ��*�&� z���� .V*��B� ���9�2 .rF���� ��'��5��2 ?� �5���� ��B&�� ���5�c��� �O�B� .��B&�� ��5�c��_� p����� ���O� .����
��5�c��_�� .��B&�� �������� .��BC=�� ���B1�� .��B&�� �������� ?[ ����� .������ ��B&�� Introduce to physics, principles, and operating mechanisms of various kinds of sensors. This course
will provide students with central core knowledge about sensors in designing and developing for bio-
medical applications. The major topics in this module cover: Brief summary of sensor technology,
basic sensor structures, sensing effects, physical sensors and their applications in bio-medical
engineering, sensors for measuring chemical quantities in bio-medical engineering, miscellaneous bio-
sensors and technologies, bio compatibility of sensors, and future trends in bio-sensor
technology. brief review of MOSFET transistor and SPICE modeling, solid-electrolyte interface,
potentiometer bioelectronics devices: principles of MOSFET-based bioelectronic devices,
amperometric bioelectronics devices, micro fabrication technologies for bioelectronic devices,
introduction to bioelectricity, neurons and neuronal networks, bioelectric measurements.
:3��6�� @2/� Text Books
L.Y. Kupriyanov, "Semiconductor Sensors in Physico-Chemical Studies", Last Edition.
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: ����� ����B&�� �������� D��s� Course : Biomedical Instrumentation
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.K�-�� ��] .� u�%&� 3o< ���1� .P-�L�9o�� ;5���� �=f:� .��C�� I�%J .��2�C�� Fundamentals of medical instrumentation systems, and bio-signal processing. The physiology of bio-
signals, including how they are generated, recorded/collected and are used clinically, will be presented.
The purpose of the signal processing methods ranges from noise and artifact reduction to extraction of
clinically significant features. The course gives each participant the opportunity to study the
performance of a method on real bio-signals. The major topics covered in this module are: Basic
concepts of biomedical instrumentation, bio-signal conditioning, blood measurements equipments,
cardio graphic, CT equipments, respiratory system and measurements, neuron-physiological
measurements, signal conditioning and various analysis (linear and nonlinear) techniques. radiology
equipments and x-rays , ultrasound, image processing, controlled injectors, MRI. A simple project has
to be associated with the course.
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L.A. Jeddes and L.E. Bake , "Principles of Applied Biomedical Instrumentation", Last Edition. A����� : References
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: ������ ���X(| ��� Code & No. : EE 4651
: ����� ����2���2�:� xHF�� D��s�P Course : Automatic Testing Equipments
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b'9�� xH+ .P��2���2�:� xHF�� M �����:� �O�B�� .P��2���2�:� �H'�� D��F� M �[�9C�� M �%^='-�� �F%'}�� K�&�� ?[ ����� ��� DO�N ����fA� ?� ��9�[ �d� .�[�9C�� M D��s:� �'�� :����� ��] M D�&o�� ��[�@��� .��5�c��_�� ���������� xHF�� �%��f !�H'�
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will be given in general with some emphasis on testing electrical and electronic products. The major
topics covered in this module are: automation in manufacturing: computer aided design and
manufacturing, Picking up signals for quality control, included tests during manufacturing,
development of test bench, non destructive tests for mechanical products, testing electronic and electric
components, printed circuit testers, signature analyzer, data bases and their role in automatic testing,
reporting, fault isolation. Standard computer interfacing for automatic testing. Design for testability:
example in electronic components, self test ICs, boundary scan method. A simple project has to be
associated with the course.
:3��6�� @2/� Text Books
W. Bolton, "Mechatronics, Electronic Control Systems in Mechanical Engineering", Last Edition.
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: ������ ���X(( ��� Code & No. : EE 4661
: ����� ���&�� �*�C'�� 85 Course: Biomedical Imaging Systems
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Overview of biomedical imaging systems. The course will examine various imaging modalities
including X-ray, ultrasound, nuclear, and MRI. How these images are formed and what types of
information they provide will be presented. Image analysis techniques will also be discussed.
Specific analysis techniques will include the analysis of cardiac ultrasound, mammography, and
MRI functional imagery.
:3��6�� @2/� Text Books
Andrew G. Webb, "Introduction to Biomedical Imaging", Last Edition. A����� : References
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: ����� ������������ ?������ ������� Course Title : Electrical Machines
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.�[�9'� Electrical quantities & units, circuit elements and laws, network theorem, nonlinear networks AC
circuits: phasors, circuit analysis, frequency response, resonance, transformers (construction,
types, operation, equivalent circuit); synchronous machines (construction, generator performance,
motor characteristics, starting); induction machines (construction, three phase motor: types,
operation, equivalent circuit, starting speed control); introduction to DC machines electric
application. :3��6�� @2/� Text Books
Chapman, "Fundamentals of Electric Machinery", McGraw Hill, Last Edition.
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: ����� ����5�c��A� � ���������� ������� Course : Electrical and Electronic circuits
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Co-requisite :
,�'-�� :( )/��� ����� �"�� ��6�(��/�>� Level : 6
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(BJT) i�t� 3G�'�� ��'��5��2 !(FET) ����'��5��2 �e�� !�%<��� ���9G �e�� !���&9�� ������� !(BJT) �(FET) ���� v.�h���� ������� Egd ?� �5c��� ��}��� !D3oC�� D��fA�
Circuit elements and laws, network theorem, nonlinear networks-AC circuits: phasors, circuit
analysis, frequency response, resonance, ideal amplifiers, ideal diodes, rectifiers, wave shaping
circuits, junction diodes, FETs and BJTs transistors, logic circuits, small signal models of diodes,
FETs, and BJTs, RC-coupled amplifiers. :3��6�� @2/� Text Books
Paul, Nasar and Unnewehr, "Introduction to Electrical Engineering", McGraw Hill, Last Edition.
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: ������ �����¥� ��� Code & No. : EE 3380
: ����� ������������ �_�� Course : Electrical Machines
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,�'-�� :¥ )(��/�>�/��� ����� �"�� ��6� Level : 8
(���m� ��� !����j� x��Cd !������� ��O� !$��c��) �9���'�� �_�� !(��+���� ������� !I�o1'�� !���5:� !$��c��) �_�j� ! M ����� !(�[�-�� M �H'�� !���m� ��� !��+���� D������ !I�o1'�� !��[��5� !��&�� ��GgG ����j� !$��c��) ��hm� �_�� �_�
.�^'-�� ���'�� Transformer (construction, types, operation, equivalent circuit), synchronous machines
(construction, generator performance, motor characteristics, starting), induction machines
(construction, three phase motor: types, operation, equivalent circuit, starting speed control);
introduction to DC machines. :3��6�� @2/� Text Books
Chapman, "Fundamentals of Electric Machinery", McGraw Hill, Last Edition
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���5�c��� :����� �� Course: Electronics
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Co-Requisite: None
?��h�� : ,�'-�� Level : 8th
7�^<�c�� :�%<��� P��9G $��c�� :P��9h�� ��'-*�5�c�� .D3B���� D3oC�� ����fA� �s�� ,��N� .� ���'�� �H9� ,P���:� $� ,P���:�w��� :E�t� 3G�2 ��'-*�5��2 .D������ �%���� �e n��� ,D3B���� D3oC�� ����fA� �s�� ,q���_� ,I^=���� I^[� $��c
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PN junction diode: basic structure, I-V characteristics, large and small-signal models. Bipolar
Junction Transistor (BJT): basic structure, modes of operation, dc biasing, dc and small-signal
models, single stage BJT amplifiers. Field-Effect Transistors (FET): structure and operation of
enhancement MOSFET, characteristics, dc biasing. Linear and nonlinear op-amp applications: inverting and non-inverting amplifiers, integrator,
difference amplifier. Differential amplifier. Current Mirror. Negative and positive feedback.
:3��6�� @2/� Text Books
Sedra and Smith, "Microelectronic Circuits", Oxford University Press, Last Edition.
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���5�c��� I^=� :����� �� Course: Electronics Lab.
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(8��>��N�/��� Level : 8
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E�t� 3G�2 ��'-*�5�c� �^'-��. n�^� E�t� 3G�2 ��'-*�5��2 7��}'��. .P%�o1'�� }�^%� ��&a� ����B&'�� Introduction to the lab tools. I-V characteristics of diode. Clipping circuits using diodes.
Rectification using diodes. Zener diode and regulators. BJT dc biasing. CE BJT amplifier.
MOSFET dc biasing. CS MOSFET amplifier. Linear applications of op-amp
:3��6�� @2/� Text Books
Sedra and Smith, "Microelectronic Circuits", Oxford University Press, Last Edition.
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:����� ��go1�� � �,���� ���5�c��� Course: Actuators and Power Electronics
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�f�=�� �� .��'�� : ,�'-�� ) ����� �"�� ��6�
>�/�����/� (8��>��N�/��� �"�L Level : 9
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T*�85� T������� ������� I�%J � ���='�� ��-L�9o������� ���5�c��� .�����_�,���� : ����O ���5�c���,,���� ��-N� H ! �B����� �H'��PWM ! z���� ����O ��n��� ��D�������B&2 . M 85��j� :,���� �s���� ��
.����j� �[��� 7�[ M �H'�� ���9�2 .��9���'�� ����j� ,��hm� ����j� ,��O�a�� I�%J ,����B&2 � ! �^C2 �_�� ,����.
Review of circuit analysis & basic electromagnetic theory. Power electronics: power
electronics circuits, H bridges, PWM control, interfacing, power amplifiers.
Applications in power systems : DC servo & stepper motors, AC synchronous &
induction motors. Typical speed and torque control techniques of motors. Analysis,
design, and applications of power converters.
�� @2/�:3��6 Text Books
1. Hart, "Introduction to Power Electronics", Prentice Hall, Last Edition.
2. Chapman, "Fundamentals of Electric Machinery", McGraw Hill, Last Edition.
A����� : References
Andrzej M. Pawlak, "Sensors and Actuators in Mechatronics: Design and
Applications", CRC Press – Taylor & Francis Group, Last Edition.
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System
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Pre-Requisite: EE 3151
Co-Requisite: None
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��/�>�/��� (8��>��N�/��� �"�L Level : 9
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85 .O�=�� T��&9�� �����B��. P�&9�� nN�� ��5��� .��=��''�� #&9�� ����O .®c1�� P�&9�� �^C'��� /�5��� ��&&{ . ��N�=�=^%� P��9B�� $��c�� .�5�9=�� w��� ..�^b'�� �o%� �Wn�� .��9���� ,��'��� ,z����� ���dA�� E�dOA� ����O .��%�o12� ,�oC�� ��N�
.D��s:� �go1� ,��B'dA� ,��5��B�� z�� ,P%G�^'�� z���� ,k��'�� ,Qq��'�� ,D�[�-� �g�<�2 ,D������ ,����-�� :,�oC��
Number systems, logic gates. Boolean algebra. Karnaugh maps and combinational logic design.
Sequential logic and state machines. Microcomputer structure and operation. I/O and interfacing circuits, counters, timers. Assembly language programming. Adressing modes. Microprocessor
system architecture: buses, memories, peripheral connections, parallel, serial, analog interfaces,
data communications, testing and debugging, device drivers.
:3��6�� @2/� Text Books
1. Triebel and Singh., "The 8088 and 8085 Microprocessors", Prentice Hall, Last Edition. 2. B. Brey, "The Intel Microprocessors", Prentice Hall, Last Edition.
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: ������ ��� �|~ ��� Code & No.: EE 3591
:����� �� I^=� M �����,�oC�� ��N�=�� 85 Course: Introduction to Microprocessor System Lab.
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Pre-Requisite: EE 3151
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�f�=�� �� .��'�� : ,�'-�� ) ����� �"�� ��6�
>�/�����/� (8��>��N�/��� �"�L Level : 9
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Machine language and Assembler programming. Design and application of digital systems for data
collection and control of pneumatic and hydraulic machine systems. Laboratory work includes the use
of microcomputers.
:3��6�� @2/� Text Books
Triebel and Singh., "The 8088 and 8085 Microprocessors", Prentice Hall, Last Edition. B. Brey, "The Intel Microprocessors", Prentice Hall, Last Edition.
A����� : References
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: ������ ��� X|` ��� Code & No.: EE 4571
:����� �� M �����[�9C�� �H'�� 85�� Course: Introduction to Industrial Control
System
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Pre-Requisite: None
Co-Requisite: None
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�/�>�/��� ������ (8��>��N�/��� �"�L Level : 8
th or 9
th or 10
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��&2 85 ���5� ��H'��� !�H'� !�f�B�� P^��� �H'�� !Q����� �H'�� 85���P%���'��� P%@�F'��� ���9'�� �H'�� !�q� , �_�^='��P%���'��� P%@�F'��� ���9'�� �H'�� .D�&�-�� :�^��� ��� �%[ K�L �O�B� !I�C��� zB��� ����� zB8�� !�]��F92���^�H'�� ���'��, .��%�o12� P[�9C�� �H'���*�o2 ������! !P���'5� !$-5 !k�'2ICF�� ,��!����� 3d�'�� )*�=2 ! �H'��
��%-%-'P! .�Wn%� �%����� ��^�H'�� D��s���s�}��� �gd���. ��s�}��� �gd��� 5�9=���.� 7��}'��� TWn�� ���� %� ¨��B��. ���d��� ��%d����. .��9���� ��O��[. ��gb- .���qA� ��5��B�� �N�=�. ��^�%='�� �^��. 7��}'��� TWn�� .P��9C�� z&}��
����B&'��. ��&d_� ��HC2� ��B'd�.
Evolution and types of control systems, centralized control, direct digital control (DDC), distributed
control systems (DCS), field buses, PID control: tuning methods and refinements, auto-tuning principles
and implementation, available industrial PID controllers and their operation. Feed forward, cascade,
ratio, selective, split range, time-delay compensation, sequence control, Programmable logic Controllers
architecture, Input/output devices, Input/output process and addressing, programming using ladder
diagram, Internal relays, Timers, Counters, Shift registers, Data handling, Instruction list, function block
diagram, applications, test and debugging
:3��6�� @2/� Text Books
1. D.E. Seborg, T.F. Edgar, D.A. Mellichamp, "Process Dynamics and Control", John Wiley and
Sons, Last Edition.
2. C. D. Johnson.,"Process Control Instrumentation Technology", Prentice Hall, Last Edition.
A����� : References
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Prince Sattam bin Abdulaziz University
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: ������ ��� X|¥ ��� Code & No.: EE 4581
:����� �� M �������[�9C�� �H'�� 85 I^=� Course: Introduction to Industrial Control
System Lab.
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Pre-Requisite: None
Co-Requisite: EE 4571
�f�=�� �� .��'�� �� ?��h�� : ,�'-�� ) ����� �"�� ��6�
��/�>�/��� (8��>��N�/��� �"�L Level : 8
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th
7��}'�� n'}�� I^[ I^1*� D3oC�� $����m� �Wn%� �%����� ��^�H'�� �. Laboratory work includes microcomputer and PLC programming.
:3��6�� @2/� Text Books
D.E. Seborg, T.F. Edgar, D.A. Mellichamp, "Process Dynamics and Control", John Wiley and Sonsm
Last Edition.
C. D. Johnson.,"Process Control Instrumentation Technology", Prentice Hall, Last Edition.
A����� : References
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:����� �� M ����� �^C'��P�&9�� Course: Introduction to Logic Design
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Number systems, Boolean algebra and logic gates, simplification of Boolean functions.Combinational logic
circuits design and analysis. MSI and PLD components. Introduction to synchronous sequential logic. Flip
flops. Analysis of clocked sequential circuits. State reduction and assignment. Design of synchronous
sequential circuits and PLA’s.
:3��6�� @2/� Text Books
Moris, "Digital Design", Prentice Hall, Last Edition.
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Familiarization with logic circuits laboratory. Introduction to logic gates. Implementation of
Boolean functions using AND and OR gates, NAND and NOR implementation, XOR and adderss.
Design of combinational circuits. Flip-flops. Design of sequential circuits. Sequential PLA’s.
:3��6�� @2/� Text Books
Moris, "Digital Design", Prentice Hall, Last Edition.
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�� �^C2 :����� ������ ������ Course: Design of Smart Mechanisms
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mechanical configurations and stresses the integrated design approach includes
sensing/actuation/control architecture and control software. Introduction to the current intelligent
system concepts. An overview of different learning schemes including: Decision Tree, Bayesian,
Inductive, Analytical and Rule-based Learning. Neural Nets, Genetic Algorithms and Reinforcement
Learning.
:3��6�� @2/� Text Books
1. Klaus Truemper, "Design of Logic-based Intelligent Systems", John Wiley & Sons, Last Edition.
2. Bart Kosko, "Neural Networks and Fuzzy Systems: A Dynamical Systems Approach to Machine
Intelligence", Prentice Hall, Last Edition.
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2 :����� ����9� ,�oC�� ����89�� Course: Microsystems Technology
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Physical principles .Design and microfabrication technologies pertinent to input (sensor) and
output (actuator) devices for multimedia applications such as video imaging devices, micromirror
projection displays, and micro-electro-mechanical systems.
:3��6�� @2/� Text Books
1. Gerald Gerlach, Wolfram Dotzel, Dörte Müller, "Introduction to Microsystem Technology: A
Guide for Students (Microsystem and Nanotechnology Series (ME20))", John Wiley & Sons,
Last Edition.
2. Julian W. Gardner, Vijay K. Varadan and Osama O. Awadelkarim, "Microsensors, MEMS,
and Smart Devices", John Wiley & Sons, Last Edition.
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Jumana Boussey, "Microsystems Technology: Fabrication, Test & Reliability", ISTE Publishing
Company, Last Edition.
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:����� ���_�t� ��-�L�9o������� Course: Electromagnetic field
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Review to vector calculus. Electrostatic fields. Gauss’s law and divergence. Electric potential.
Dielectrics and capacitance. Poisson’s and Laplace’s equations. Charge images. Current density
and conductors. Magnetostatic fields. Biot–Savart and Ampere’s laws. Curl and Stoke’s theorem.
Magnetic materials and circuits. Self and mutual inductances. Energy in static Fields.
:3��6�� @2/� Text Books
Sadiku, "Elements of Electromagnetics", Oxford, Last Edition.
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Short Description of the EE Courses to be Taught in
IE Department
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� : ����� ����������� ?������ ������� Course Title : Electrical Machines
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,�'-�� :| )(��/�>�/��� ����� �"�� ��6� Level : 5
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.������ ����B&2 .(��+���� D������!Ts�:� PGgh�� ®�j� !$��c��) ��hm� �_�� !(����j� Electrical quantities & units, circuit elements and laws, network theorem, nonlinear networks AC
circuits: phasors, circuit analysis, frequency response, resonance, introduction to DC machines,
transformers (construction, types, operation, equivalent circuit); synchronous machines
(construction, generator performance, motor characteristics, starting); induction machines
(construction, three phase motor: types, operation, equivalent circuit, starting speed control).
Introduction to DC machines electric application. :3��6�� @2/� Text Books
Chapman, "Fundamentals of Electric Machinery", McGraw Hill, Last Edition
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